Calderón Antonio José, González Isaías
Department of Electrical Engineering, Electronics and Automation, University of Extremadura, Avenida de Elvas, s/n, 06006 Badajoz, Spain.
Sensors (Basel). 2017 Oct 11;17(10):2305. doi: 10.3390/s17102305.
The so-called Jar Test (JT) plays a vital role in the drinking water and wastewater treatments for establishing the dosage of flocculants and coagulant. This test is a well-proved laboratory instrumental procedure performed by trained personnel. In this work, a completely novel system for the automation and monitoring of a JT devoted to drinking water treatment is presented. It has been implemented using an industrial programmable controller and sensors and instruments specifically selected for this purpose. Once the parameters of the test have been entered, the stages that compose the JT (stirring, coagulant addition, etc.) are sequentially performed without human intervention. Moreover, all the involved measurements from sensors are collected and made accessible for continuous monitoring of the process. By means of the proposed system, the JT procedure is conducted fully automatically and can be locally and remotely monitored in real-time. Furthermore, the developed system constitutes a portable laboratory that offers advantageous features like scalability and transportability. The proposed system is described focusing on hardware and instrumentation aspects, and successful results are reported.
所谓的烧杯试验(JT)在饮用水和废水处理中对于确定絮凝剂和凝聚剂的用量起着至关重要的作用。该试验是一项经过充分验证的实验室仪器操作程序,由经过培训的人员进行。在这项工作中,提出了一种全新的用于饮用水处理的烧杯试验自动化和监测系统。它是使用工业可编程控制器以及专门为此目的挑选的传感器和仪器来实现的。一旦输入测试参数,组成烧杯试验的各个阶段(搅拌、添加凝聚剂等)将在无需人工干预的情况下依次进行。此外,来自传感器的所有相关测量数据都会被收集起来,以便对过程进行连续监测。借助所提出的系统,烧杯试验程序能够完全自动进行,并且可以在本地和远程进行实时监测。此外,所开发的系统构成了一个便携式实验室,具有诸如可扩展性和可运输性等优势特性。本文围绕硬件和仪器方面对所提出的系统进行了描述,并报告了成功的结果。